Chang S, Wasmuth J J
Mol Cell Biol. 1983 May;3(5):761-72. doi: 10.1128/mcb.3.5.761-772.1983.
Starting with hybrid cell lines between a Chinese hamster cell EmtA mutant and a Chinese hamster cell EmtB mutant, we have constructed cell lines that are homozygous for mutant alleles at both the emtA locus and the emtB locus, by using a two-step segregation protocol. The EmtA EmtB double mutants are approximately 10-fold more resistant to emetine inhibition than either of the parental mutants. Having both the EmtA mutation and the EmtB mutation expressed in the same cell also results in a level of resistance to cryptopleurine that is significantly higher than a simple additive effect of the two mutations alone. Analysis of ribosomal proteins by two-dimensional polyacrylamide gel electrophoresis demonstrated that a parental hybrid and a first-step segregant, which has lost the wild-type emtA allele, synthesize both a normal and an altered form of ribosomal protein S14, whereas an EmtA EmtB double mutant synthesizes only the altered form of this ribosomal protein. This result confirms that the emtB locus is the structural gene for ribosomal protein S14. Our results also suggest that the products of the emtA and emtB loci interact directly, indicating that the emtA locus, like the emtB locus, encodes a component of the ribosome.
从中国仓鼠细胞EmtA突变体和中国仓鼠细胞EmtB突变体之间的杂交细胞系开始,我们通过两步分离方案构建了在emtA基因座和emtB 基因座上突变等位基因均为纯合的细胞系。EmtA EmtB双重突变体对依米丁抑制的抗性比任何一个亲本突变体高约10倍。在同一细胞中同时表达EmtA突变和EmtB突变也导致对隐蒴芦碱的抗性水平显著高于仅两个突变的简单加和效应。通过二维聚丙烯酰胺凝胶电泳对核糖体蛋白进行分析表明,亲本杂交细胞系和已丢失野生型emtA等位基因的第一步分离子系同时合成正常形式和改变形式的核糖体蛋白S14,而EmtA EmtB双重突变体仅合成这种核糖体蛋白的改变形式。这一结果证实emtB基因座是核糖体蛋白S14的结构基因。我们的结果还表明,emtA和emtB基因座的产物直接相互作用,这表明emtA基因座与emtB基因座一样,编码核糖体的一个组分。